Holmes Ben, Jung Seung Ho, Lu Jing, Wagner Jessica A, Rubbi Liudmilla, Pellegrini Matteo, Jankord Ryan
Applied Neuroscience, Warfighter Interface Division, 711th Human Performance Wing, Air Force Research Laboratory, Wright-Patterson AFB, Dayton, OH 45433, USA.
Department of Molecular, Cell, and Developmental Biology, University of California, Los Angeles, CA 90095, USA.
Neural Plast. 2016;2016:5942980. doi: 10.1155/2016/5942980. Epub 2016 Dec 29.
Transcranial direct current stimulation (tDCS) has been shown to modulate neuroplasticity. Beneficial effects are observed in patients with psychiatric disorders and enhancement of brain performance in healthy individuals has been observed following tDCS. However, few studies have attempted to elucidate the underlying molecular mechanisms of tDCS in the brain. This study was conducted to assess the impact of tDCS on gene expression within the rat cerebral cortex. Anodal tDCS was applied at 3 different intensities followed by RNA-sequencing and analysis. In each current intensity, approximately 1,000 genes demonstrated statistically significant differences compared to the sham group. A variety of functional pathways, biological processes, and molecular categories were found to be modified by tDCS. The impact of tDCS on gene expression was dependent on current intensity. Results show that inflammatory pathways, antidepressant-related pathways (GTP signaling, calcium ion binding, and transmembrane/signal peptide pathways), and receptor signaling pathways (serotonergic, adrenergic, GABAergic, dopaminergic, and glutamate) were most affected. Of the gene expression profiles induced by tDCS, some changes were observed across multiple current intensities while other changes were unique to a single stimulation intensity. This study demonstrates that tDCS can modify the expression profile of various genes in the cerebral cortex and that these tDCS-induced alterations are dependent on the current intensity applied.
经颅直流电刺激(tDCS)已被证明可调节神经可塑性。在患有精神疾病的患者中观察到了有益效果,并且在tDCS后,健康个体的大脑功能也得到了增强。然而,很少有研究试图阐明tDCS在大脑中的潜在分子机制。本研究旨在评估tDCS对大鼠大脑皮质内基因表达的影响。以3种不同强度施加阳极tDCS,随后进行RNA测序和分析。在每种电流强度下,与假手术组相比,约有1000个基因表现出统计学上的显著差异。发现多种功能途径、生物学过程和分子类别被tDCS改变。tDCS对基因表达的影响取决于电流强度。结果表明,炎症途径、抗抑郁相关途径(GTP信号传导、钙离子结合和跨膜/信号肽途径)以及受体信号传导途径(血清素能、肾上腺素能、GABA能、多巴胺能和谷氨酸能)受到的影响最大。在tDCS诱导的基因表达谱中,一些变化在多种电流强度下都能观察到,而其他变化则是单一刺激强度所特有的。本研究表明,tDCS可改变大脑皮质中各种基因的表达谱,并且这些tDCS诱导的改变取决于所施加的电流强度。